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A likely role for anoxygenic photosynthetic microbes in the formation of ancient stromatolites.

机译:生氧光合微生物在古代叠层石形成中的可能作用。

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摘要

Although cyanobacteria are the dominant primary producers in modern stromatolites and other microbialites, the oldest stromatolites pre-date geochemical evidence for oxygenic photosynthesis and cyanobacteria in the rock record. As a step towards the development of laboratory models of stromatolite growth, we tested the potential of a metabolically ancient anoxygenic photosynthetic bacterium to build stromatolites. This organism, Rhodopseudomonas palustris, stimulates the precipitation of calcite in solutions already highly saturated with respect to calcium carbonate, and greatly facilitates the incorporation of carbonate grains into proto-lamina (i.e. crusts). The appreciable stimulation of the growth of proto-lamina by a nonfilamentous anoxygenic microbe suggests that similar microbes may have played a greater role in the formation of Archean stromatolites than previously assumed..
机译:尽管蓝细菌是现代叠层岩和其他微成岩岩中主要的主要生产者,但最古老的叠层岩在岩石记录中早于地球化学证据证明了氧的光合作用和蓝细菌。作为发展叠层石生长实验室模型的一步,我们测试了代谢古老的产氧光合细菌构建叠层石的潜力。这种生物,即Rhodopseudomonas palustris,刺激了方解石在相对于碳酸钙而言已经高度饱和的溶液中的沉淀,并极大地促进了碳酸盐颗粒掺入原层(即硬皮)中。非丝状产氧微生物对原板层生长的明显刺激表明,类似微生物可能在太古代叠层石的形成中发挥了比以前设想的更大的作用。

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